mirror of
https://github.com/lightningnetwork/lnd.git
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395 lines
9.6 KiB
Go
395 lines
9.6 KiB
Go
package invoices_test
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import (
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"crypto/rand"
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"encoding/binary"
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"encoding/hex"
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"fmt"
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"os"
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"runtime/pprof"
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"sync"
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"testing"
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"time"
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"github.com/btcsuite/btcd/btcec/v2"
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"github.com/btcsuite/btcd/btcec/v2/ecdsa"
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"github.com/btcsuite/btcd/chaincfg"
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"github.com/btcsuite/btcd/chaincfg/chainhash"
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"github.com/lightningnetwork/lnd/chainntnfs"
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"github.com/lightningnetwork/lnd/clock"
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invpkg "github.com/lightningnetwork/lnd/invoices"
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"github.com/lightningnetwork/lnd/lntypes"
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"github.com/lightningnetwork/lnd/lnwire"
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"github.com/lightningnetwork/lnd/record"
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"github.com/lightningnetwork/lnd/zpay32"
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"github.com/stretchr/testify/require"
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)
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type mockPayload struct {
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mpp *record.MPP
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amp *record.AMP
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customRecords record.CustomSet
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metadata []byte
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}
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func (p *mockPayload) MultiPath() *record.MPP {
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return p.mpp
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}
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func (p *mockPayload) AMPRecord() *record.AMP {
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return p.amp
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}
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func (p *mockPayload) CustomRecords() record.CustomSet {
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// This function should always return a map instance, but for mock
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// configuration we do accept nil.
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if p.customRecords == nil {
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return make(record.CustomSet)
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}
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return p.customRecords
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}
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func (p *mockPayload) Metadata() []byte {
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return p.metadata
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}
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type mockChainNotifier struct {
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chainntnfs.ChainNotifier
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blockChan chan *chainntnfs.BlockEpoch
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}
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func newMockNotifier() *mockChainNotifier {
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return &mockChainNotifier{
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blockChan: make(chan *chainntnfs.BlockEpoch),
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}
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}
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// RegisterBlockEpochNtfn mocks a block epoch notification, using the mock's
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// block channel to deliver blocks to the client.
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func (m *mockChainNotifier) RegisterBlockEpochNtfn(*chainntnfs.BlockEpoch) (
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*chainntnfs.BlockEpochEvent, error) {
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return &chainntnfs.BlockEpochEvent{
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Epochs: m.blockChan,
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Cancel: func() {},
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}, nil
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}
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const (
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testHtlcExpiry = uint32(5)
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testInvoiceCltvDelta = uint32(4)
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testFinalCltvRejectDelta = int32(4)
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testCurrentHeight = int32(1)
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)
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var (
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testTimeout = 5 * time.Second
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testTime = time.Date(2018, time.February, 2, 14, 0, 0, 0, time.UTC)
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testInvoicePreimage = lntypes.Preimage{1}
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testInvoicePaymentHash = testInvoicePreimage.Hash()
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testPrivKeyBytes, _ = hex.DecodeString(
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"e126f68f7eafcc8b74f54d269fe206be715000f94dac067d1c04a8ca3b2d" +
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"b734",
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)
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testPrivKey, _ = btcec.PrivKeyFromBytes(testPrivKeyBytes)
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testInvoiceDescription = "coffee"
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testInvoiceAmount = lnwire.MilliSatoshi(100000)
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testNetParams = &chaincfg.MainNetParams
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testMessageSigner = zpay32.MessageSigner{
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SignCompact: func(msg []byte) ([]byte, error) {
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hash := chainhash.HashB(msg)
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sig, err := ecdsa.SignCompact(testPrivKey, hash, true)
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if err != nil {
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return nil, fmt.Errorf("can't sign the "+
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"message: %v", err)
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}
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return sig, nil
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},
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}
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testFeatures = lnwire.NewFeatureVector(
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nil, lnwire.Features,
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)
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testPayload = &mockPayload{}
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testInvoiceCreationDate = testTime
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)
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type testContext struct {
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idb invpkg.InvoiceDB
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registry *invpkg.InvoiceRegistry
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notifier *mockChainNotifier
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clock *clock.TestClock
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t *testing.T
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}
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func defaultRegistryConfig() invpkg.RegistryConfig {
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return invpkg.RegistryConfig{
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FinalCltvRejectDelta: testFinalCltvRejectDelta,
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HtlcHoldDuration: 30 * time.Second,
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}
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}
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func newTestContext(t *testing.T,
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registryCfg *invpkg.RegistryConfig,
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makeDB func(t *testing.T) (invpkg.InvoiceDB,
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*clock.TestClock)) *testContext {
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t.Helper()
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idb, clock := makeDB(t)
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notifier := newMockNotifier()
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expiryWatcher := invpkg.NewInvoiceExpiryWatcher(
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clock, 0, uint32(testCurrentHeight), nil, notifier,
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)
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cfg := defaultRegistryConfig()
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if registryCfg != nil {
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cfg = *registryCfg
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}
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cfg.Clock = clock
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// Instantiate and start the invoice ctx.registry.
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registry := invpkg.NewRegistry(idb, expiryWatcher, &cfg)
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require.NoError(t, registry.Start())
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t.Cleanup(func() {
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require.NoError(t, registry.Stop())
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})
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ctx := testContext{
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idb: idb,
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registry: registry,
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notifier: notifier,
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clock: clock,
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t: t,
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}
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return &ctx
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}
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func getCircuitKey(htlcID uint64) invpkg.CircuitKey {
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return invpkg.CircuitKey{
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ChanID: lnwire.ShortChannelID{
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BlockHeight: 1, TxIndex: 2, TxPosition: 3,
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},
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HtlcID: htlcID,
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}
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}
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// newInvoice returns an invoice that can be used for testing, using the
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// constant values defined above (deep copied if necessary).
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//
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// Note that this invoice *does not* have a payment address set. It will
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// create a regular invoice with a preimage is hodl is false, and a hodl
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// invoice with no preimage otherwise.
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func newInvoice(t *testing.T, hodl bool) *invpkg.Invoice {
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invoice := &invpkg.Invoice{
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Terms: invpkg.ContractTerm{
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Value: testInvoiceAmount,
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Expiry: time.Hour,
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Features: testFeatures.Clone(),
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},
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CreationDate: testInvoiceCreationDate,
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}
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// If creating a hodl invoice, we don't include a preimage.
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if hodl {
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invoice.HodlInvoice = true
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return invoice
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}
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preimage, err := lntypes.MakePreimage(
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testInvoicePreimage[:],
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)
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require.NoError(t, err)
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invoice.Terms.PaymentPreimage = &preimage
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return invoice
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}
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// timeout implements a test level timeout.
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func timeout() func() {
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done := make(chan struct{})
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go func() {
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select {
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case <-time.After(10 * time.Second):
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err := pprof.Lookup("goroutine").WriteTo(os.Stdout, 1)
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if err != nil {
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panic(fmt.Sprintf("error writing to std out "+
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"after timeout: %v", err))
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}
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panic("timeout")
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case <-done:
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}
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}()
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return func() {
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close(done)
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}
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}
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// invoiceExpiryTestData simply holds generated expired and pending invoices.
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type invoiceExpiryTestData struct {
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expiredInvoices map[lntypes.Hash]*invpkg.Invoice
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pendingInvoices map[lntypes.Hash]*invpkg.Invoice
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}
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// generateInvoiceExpiryTestData generates the specified number of fake expired
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// and pending invoices anchored to the passed now timestamp.
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func generateInvoiceExpiryTestData(
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t *testing.T, now time.Time,
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offset, numExpired, numPending int) invoiceExpiryTestData {
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var testData invoiceExpiryTestData
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testData.expiredInvoices = make(map[lntypes.Hash]*invpkg.Invoice)
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testData.pendingInvoices = make(map[lntypes.Hash]*invpkg.Invoice)
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expiredCreationDate := now.Add(-24 * time.Hour)
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for i := 1; i <= numExpired; i++ {
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var preimage lntypes.Preimage
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binary.BigEndian.PutUint32(preimage[:4], uint32(offset+i))
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expiry := time.Duration((i+offset)%24) * time.Hour
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invoice := newInvoiceExpiryTestInvoice(
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t, preimage, expiredCreationDate, expiry,
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)
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testData.expiredInvoices[preimage.Hash()] = invoice
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}
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for i := 1; i <= numPending; i++ {
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var preimage lntypes.Preimage
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binary.BigEndian.PutUint32(preimage[4:], uint32(offset+i))
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expiry := time.Duration((i+offset)%24) * time.Hour
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invoice := newInvoiceExpiryTestInvoice(t, preimage, now, expiry)
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testData.pendingInvoices[preimage.Hash()] = invoice
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}
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return testData
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}
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// newInvoiceExpiryTestInvoice creates a test invoice with a randomly generated
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// payment address and custom preimage and expiry details. It should be used in
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// the case where tests require custom invoice expiry and unique payment
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// hashes.
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func newInvoiceExpiryTestInvoice(t *testing.T, preimage lntypes.Preimage,
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timestamp time.Time, expiry time.Duration) *invpkg.Invoice {
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if expiry == 0 {
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expiry = time.Hour
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}
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var payAddr [32]byte
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if _, err := rand.Read(payAddr[:]); err != nil {
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t.Fatalf("unable to generate payment addr: %v", err)
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}
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rawInvoice, err := zpay32.NewInvoice(
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testNetParams,
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preimage.Hash(),
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timestamp,
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zpay32.Amount(testInvoiceAmount),
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zpay32.Description(testInvoiceDescription),
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zpay32.Expiry(expiry),
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zpay32.PaymentAddr(payAddr),
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)
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require.NoError(t, err, "Error while creating new invoice")
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paymentRequest, err := rawInvoice.Encode(testMessageSigner)
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require.NoError(t, err, "Error while encoding payment request")
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return &invpkg.Invoice{
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Terms: invpkg.ContractTerm{
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PaymentPreimage: &preimage,
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PaymentAddr: payAddr,
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Value: testInvoiceAmount,
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Expiry: expiry,
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Features: testFeatures,
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},
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PaymentRequest: []byte(paymentRequest),
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CreationDate: timestamp,
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}
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}
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// checkSettleResolution asserts the resolution is a settle with the correct
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// preimage. If successful, the HtlcSettleResolution is returned in case further
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// checks are desired.
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func checkSettleResolution(t *testing.T, res invpkg.HtlcResolution,
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expPreimage lntypes.Preimage) *invpkg.HtlcSettleResolution {
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t.Helper()
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settleResolution, ok := res.(*invpkg.HtlcSettleResolution)
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require.True(t, ok)
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require.Equal(t, expPreimage, settleResolution.Preimage)
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return settleResolution
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}
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// checkFailResolution asserts the resolution is a fail with the correct reason.
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// If successful, the HtlcFailResolution is returned in case further checks are
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// desired.
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func checkFailResolution(t *testing.T, res invpkg.HtlcResolution,
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expOutcome invpkg.FailResolutionResult) *invpkg.HtlcFailResolution {
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t.Helper()
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failResolution, ok := res.(*invpkg.HtlcFailResolution)
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require.True(t, ok)
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require.Equal(t, expOutcome, failResolution.Outcome)
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return failResolution
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}
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type hodlExpiryTest struct {
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hash lntypes.Hash
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state invpkg.ContractState
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stateLock sync.Mutex
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mockNotifier *mockChainNotifier
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mockClock *clock.TestClock
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cancelChan chan lntypes.Hash
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watcher *invpkg.InvoiceExpiryWatcher
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}
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func (h *hodlExpiryTest) announceBlock(t *testing.T, height uint32) {
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t.Helper()
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select {
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case h.mockNotifier.blockChan <- &chainntnfs.BlockEpoch{
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Height: int32(height),
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}:
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case <-time.After(testTimeout):
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t.Fatalf("block %v not consumed", height)
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}
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}
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func (h *hodlExpiryTest) assertCanceled(t *testing.T, expected lntypes.Hash) {
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select {
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case actual := <-h.cancelChan:
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require.Equal(t, expected, actual)
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case <-time.After(testTimeout):
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t.Fatalf("invoice: %v not canceled", h.hash)
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}
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}
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